Emulating functions of natural enzymes in man-made constructs has proven challenging. Here we describe a man-made protein platform that reproduces many of the diverse functions of natural oxidoreductases without importing the complex and obscure interactions common to natural proteins. Our design is founded on an elementary, structurally stable 4-α-helix protein monomer with a minimalist interior malleable enough to accommodate various light- and redox-active cofactors and with an exterior tolerating extensive charge patterning for modulation of redox cofactor potentials and environmental interactions. Despite its modest size, the construct offers several independent domains for functional engineering that targets diverse natural activities...
The first principles design of manmade redox-protein maquettes is used to clarify the physical/chemi...
In nature, oxidoreductase proteins are responsible for many enzymatic processes critical to life. Th...
In all organisms, protein-mediated electron transfers underlie energy metabolism and countless other...
Redox reactions drive the energy transduction processes that are the cornerstone of biology. Oxidore...
Oxidoreductases are a diverse class of enzymes defined by their chemical role of transferring electr...
In all organisms, protein-mediated electron transfers underlie energy metabolism and countless other...
In all organisms, protein-mediated electron transfers underlie energy metabolism and countless other...
The successful use of man-made proteins to advance synthetic biology requires both the fabrication o...
Oxidoreductases are a diverse class of enzymes defined by their chemical role of transferring electr...
The principles of natural protein engineering are obscured by overlapping functions and complexity a...
Natural selection in photosynthesis has engineered tetrapyrrole based, nanometer scale, light harves...
Much is now known about how protein folding occurs, through the sequence analysis of proteins of kno...
Fundamental questions of protein cofactor oxygen reactivity are left unanswered even after years of ...
Fundamental questions of protein cofactor oxygen reactivity are left unanswered even after years of ...
In nature, oxidoreductase proteins are responsible for many enzymatic processes critical to life. Th...
The first principles design of manmade redox-protein maquettes is used to clarify the physical/chemi...
In nature, oxidoreductase proteins are responsible for many enzymatic processes critical to life. Th...
In all organisms, protein-mediated electron transfers underlie energy metabolism and countless other...
Redox reactions drive the energy transduction processes that are the cornerstone of biology. Oxidore...
Oxidoreductases are a diverse class of enzymes defined by their chemical role of transferring electr...
In all organisms, protein-mediated electron transfers underlie energy metabolism and countless other...
In all organisms, protein-mediated electron transfers underlie energy metabolism and countless other...
The successful use of man-made proteins to advance synthetic biology requires both the fabrication o...
Oxidoreductases are a diverse class of enzymes defined by their chemical role of transferring electr...
The principles of natural protein engineering are obscured by overlapping functions and complexity a...
Natural selection in photosynthesis has engineered tetrapyrrole based, nanometer scale, light harves...
Much is now known about how protein folding occurs, through the sequence analysis of proteins of kno...
Fundamental questions of protein cofactor oxygen reactivity are left unanswered even after years of ...
Fundamental questions of protein cofactor oxygen reactivity are left unanswered even after years of ...
In nature, oxidoreductase proteins are responsible for many enzymatic processes critical to life. Th...
The first principles design of manmade redox-protein maquettes is used to clarify the physical/chemi...
In nature, oxidoreductase proteins are responsible for many enzymatic processes critical to life. Th...
In all organisms, protein-mediated electron transfers underlie energy metabolism and countless other...